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Enhancement of V-OC without Loss of J(SC) in Organic Solar Cells by Modification of Donor/Acceptor Interfaces

机译:通过修改供体/受体界面增强有机太阳能电池中V-OC而不损失J(SC)

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摘要

Organic solar cells (OSCs) are promising low-cost devices for generating electricity. In addition to fill factor, the short circuit current density (J(SC)) and the open circuit voltage (V-OC) are two key factors that have critical influence on the device performance. The energy levels of the donor and acceptor materials are crucial for achieving a high J(SC) and V-OC. However, the interfacial structures between the organic materials substantially affect the J(SC) and V-OC through the energy of the charge transfer (CT) states and the charge separation and recombination reaction kinetics. Here, it is reported that separating the donor and acceptor layer in bilayer OSCs with a thin insulating layer increases the energy of the CT state by weakening the Coulomb interaction at the interface and this also suppresses photoinduced CT and recombination. Although these effects usually increase V-OC and decrease J(SC), the trade-off is avoided by doping the insulating layer with a dye to utilize the energy transfer process. The increase in V-OC without the reduction in J(SC) enhances the conversion efficiency of the OSCs by 30.
机译:有机太阳能电池(OSC)是有前途的低成本发电设备。除填充因子外,短路电流密度(J(SC))和开路电压(V-OC)也是对器件性能产生关键影响的两个关键因素。供体和受体材料的能级对于实现高 J(SC) 和 V-OC 至关重要。然而,有机材料之间的界面结构通过电荷转移(CT)态的能量和电荷分离和复合反应动力学对J(SC)和V-OC产生重大影响。在这里,据报道,在具有薄绝缘层的双层OSC中分离供体和受体层通过削弱界面处的库仑相互作用来增加CT态的能量,这也抑制了光诱导CT和复合。尽管这些效应通常会增加 V-OC 并降低 J(SC),但通过在绝缘层中掺杂染料以利用能量传递过程来避免权衡。在不降低J(SC)的情况下增加V-OC可将OSC的转换效率提高30%。

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